Temporal exposure to malathion: Biochemical changes in the Amazonian fish tambaqui, Colossoma macropomum.


Journal

Aquatic toxicology (Amsterdam, Netherlands)
ISSN: 1879-1514
Titre abrégé: Aquat Toxicol
Pays: Netherlands
ID NLM: 8500246

Informations de publication

Date de publication:
Dec 2021
Historique:
received: 09 06 2021
revised: 14 09 2021
accepted: 10 10 2021
pubmed: 24 10 2021
medline: 20 11 2021
entrez: 23 10 2021
Statut: ppublish

Résumé

The main toxicity mechanism of organophosphate insecticides such as malathion is the acetylcholinesterase enzyme inhibition. However, fish responses to organophosphates may vary depending on the activation of different defense mechanisms as well as the length of exposure. As such, the evaluation of acetylcholinesterase activity, in combination with the evaluation of biotransformation and antioxidants enzymes levels, is useful for indicating damage in fish exposed to this insecticide. Moreover, evaluating mitochondrial activity might evidence how the hierarchic responses occur in relation to the length of time that the fish is exposed. Therefore, the aim of our study is to evaluate whether the length of exposure to malathion differentially affects the biochemical responses of tambaqui. Our hypothesis is that the physiological alterations due to exposure are time dependent. Fish were exposed to sublethal concentrations of the insecticide during 6, 12, 24, 36, and 48 h. Contrary to expectations, there was no acetylcholinesterase activity inhibition during the experiment, which indicates an absence of neurotoxicity. Phase II biotransformation mechanism was activated early, especially in the liver. Oxidative damage was evident in the first hours of exposure and was concurrent with the activation of antioxidant enzymes. Mitochondrial bioenergetics were differentially affected by the length of exposure. The data suggest that the tambaqui regulates mitochondrial respiration differently over time, seeking to maintain homeostasis and ATP demand, and ensures the activation of response mechanisms, thus minimizing oxidative damage and avoiding the neurotoxicity of malathion.

Identifiants

pubmed: 34688140
pii: S0166-445X(21)00256-3
doi: 10.1016/j.aquatox.2021.105997
pii:
doi:

Substances chimiques

Insecticides 0
Water Pollutants, Chemical 0
Acetylcholinesterase EC 3.1.1.7
Malathion U5N7SU872W

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

105997

Informations de copyright

Copyright © 2021. Published by Elsevier B.V.

Auteurs

Samara Silva de Souza (SS)

Laboratory of Ecophysiology and Molecular Evolution, National Institute for Research in the Amazon (INPA), Manaus, AM, Brazil. Electronic address: samsouzabio@gmail.com.

Jonatas da Silva Castro (JDS)

Laboratory of Ecophysiology and Molecular Evolution, National Institute for Research in the Amazon (INPA), Manaus, AM, Brazil.

Derek Felipe Campos (DF)

Laboratory of Ecophysiology and Molecular Evolution, National Institute for Research in the Amazon (INPA), Manaus, AM, Brazil.

Rogério Santos Pereira (RS)

Laboratory of Ecophysiology and Molecular Evolution, National Institute for Research in the Amazon (INPA), Manaus, AM, Brazil.

Giovana Anceski Bataglion (GA)

Laboratory of Ecophysiology and Molecular Evolution, National Institute for Research in the Amazon (INPA), Manaus, AM, Brazil; Department of Chemistry, Federal University of Amazonas (UFAM), Manaus, AM, Brazil.

Grazyelle Sebrenski da Silva (GSD)

Laboratory of Ecophysiology and Molecular Evolution, National Institute for Research in the Amazon (INPA), Manaus, AM, Brazil; Institute of Biological Science (ICB), Federal University of Amazonas (UFAM), Manaus, AM, Brazil.

Vera Maria Fonseca de Almeida-Val (VMF)

Laboratory of Ecophysiology and Molecular Evolution, National Institute for Research in the Amazon (INPA), Manaus, AM, Brazil.

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Classifications MeSH